Kangmo Ahn
Sungkyunkwan University · Medicine
About the Lab
Professor Kangmo Ahn's research lab focuses on the environmental and immunological factors that influence atopic dermatitis (AD) and other allergic diseases. The lab investigates the impact of air pollutants—particularly PM2.5—on skin barrier function and filaggrin degradation, as well as the role of indoor air quality in exacerbating AD symptoms in children. It also explores novel allergens in common foods like pistachios and examines host-microbe interactions, such as how *S. aureus* disrupts skin lipid metabolism through pro-inflammatory cytokines. The lab integrates clinical, molecular, and epidemiological approaches to understand the pathogenesis of allergic diseases in real-world environments.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15The molecular mechanisms that underlie the detrimental effects of particulate matter (PM) on skin barrier function are poorly understood. In this study, the effects of PM2.5 on filaggrin (FLG) and skin barrier function were investigated in vitro and in vivo. The levels of FLG degradation products, including pyrrolidone carboxylic acid, urocanic acid (UCA), and cis/trans-UCA, were significantly decreased in skin tape stripping samples of study subjects when they moved from Denver, an area with lo
Exposure to meteorological variables and air pollutants are associated with AD symptoms in young children.
OBJECTIVES: We conducted this study to determine the incidence of food allergy (FA) in Korean infants and identify the risk factors of FAs during the first year of life in a birth cohort study. METHODS: Pregnant women ≥34 weeks of gestation were enrolled in this study. Participants were asked to complete questionnaires describing basic demographic information including family history of allergic diseases. Since birth, all the babies were regularly followed up for FA symptoms through telephone in
BACKGROUND: IgE-mediated allergic reactions to pistachio appear to be occurring more frequently; however, little is known about its allergenic proteins. OBJECTIVE: We attempted to identify pistachio allergens and to clone the encoding genes. METHODS: Pistachio proteins were extracted and separated by SDS-PAGE. Immunolabelling was performed with sera from 28 pistachio-allergic individuals. Proteins of interest were further analysed by Edman sequencing and mass spectrometry/mass spectrometry (MS/M
Most of researches on the impact of indoor air pollutants on atopic dermatitis (AD) have been based upon animal models, in vitro experiments and case-control studies. However, human data to elucidate the role of indoor air pollution on worsening symptoms of pre-existing AD from a longitudinal study are scarce. The objective of this prospective study was to evaluate the effect of indoor air pollution on AD symptoms in children. We surveyed 30 children with AD in a day-care centre, which moved to
T o investigate the prevalence of asthma, allergic rhinitis, and eczema, we did a cross-sectional survey of 4,003 children aged 6-7 years (students in the 1st year of elementary school) and 4,112 students aged 13-14 years (students in the 1st year of middle school), chosen from a random sample of 45 primary and 40 middle schools across the nation. The Korean-translated modified version of the International Study of Asthma and Allergies in Childhood (ISAAC) questionnaire was used in this survey.
BACKGROUND: Staphylococcus (S) aureus colonization is known to cause skin barrier disruption in atopic dermatitis (AD) patients. However, it has not been studied how S. aureus induces aberrant epidermal lipid composition and skin barrier dysfunction. METHODS: Skin tape strips (STS) and swabs were obtained from 24 children with AD (6.0 ± 4.4 years) and 16 healthy children (7.0 ± 4.5 years). Lipidomic analysis of STS samples was performed by mass spectrometry. Skin levels of methicillin-sensitive
BACKGROUND: Despite increasing evidence on the relationship between exposure to phthalates and bisphenol A with allergies and asthma, reports on atopic dermatitis (AD) with these chemicals are few. We assessed the association between AD symptoms and the exposure to phthalates and bisphenol A and in children. METHODS: We surveyed 18 boys with AD (age 3-7 years) in a day care center in Seoul between May 2009 and April 2010. AD symptoms were recorded by using a daily symptom diary. We collected 460
Phthalates, especially DEHP, may worsen pulmonary function and airway inflammation in asthmatic children. To control asthma symptoms, exposure to phthalates needs to be avoided.
Research Areas
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